Department of Life Sciences and Systems Biology, University of Turin, 10125, Torino, Italy.
ISA, INRA, Université Côte d'Azur, CNRS, 06903, Sophia Antipolis, France.
New Phytol. 2019 Jul;223(1):430-446. doi: 10.1111/nph.15763. Epub 2019 Apr 1.
The intracellular accommodation of arbuscular mycorrhizal (AM) fungi is a paradigmatic feature of this plant symbiosis that depends on the activation of a dedicated signaling pathway and the extensive reprogramming of host cells, including striking changes in nuclear size and transcriptional activity. By combining targeted sampling of early root colonization sites, detailed confocal imaging, flow cytometry and gene expression analyses, we demonstrate that local, recursive events of endoreduplication are triggered in the Medicago truncatula root cortex during AM colonization. AM colonization induces an increase in ploidy levels and the activation of endocycle specific markers. This response anticipates the progression of fungal colonization and is limited to arbusculated and neighboring cells in the cortical tissue. Furthermore, endoreduplication is not induced in M. truncatula mutants for symbiotic signaling pathway genes. On this basis, we propose endoreduplication as part of the host cell prepenetration responses that anticipate AM fungal accommodation in the root cortex.
丛枝菌根(AM)真菌的细胞内容纳是这种植物共生的一个典型特征,它依赖于专门信号通路的激活和宿主细胞的广泛重编程,包括核大小和转录活性的显著变化。通过结合早期根系定殖部位的靶向取样、详细的共聚焦成像、流式细胞术和基因表达分析,我们证明在 AM 定殖过程中, Medicago truncatula 根皮层中会触发局部、递归的内复制事件。AM 定殖诱导倍性水平的增加和内循环特异性标记物的激活。这种反应先于真菌定殖的进展,并仅限于皮层组织中被菌根化和相邻的细胞。此外,在共生信号通路基因突变体中,内复制不会被诱导。在此基础上,我们提出内复制作为宿主细胞预穿透反应的一部分,该反应先于 AM 真菌在根皮层中的容纳。